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- Q-A diode has a forward resistance of 2002 is connected in series with a resistive load of 10000. The circuit is fed through a 230 V, 50 Hz ac supply, the dc load current in the circuit will be Vm= √2 230V D R = 10000M EXPERIMENT 01 V(n002) V(n001) 10V- 8V- 6V- 4V- 2V- OV- -2V- 4V- -6V- -8V- -10V- 0.00ms 30.00ms 60.00ms 90.00ms 120.00ms 150.00ms 180.00ms K EXPERIMENT 01 X Diode 1N914 V Resistor SINE(0 10 60000 100) 10K .tran 2A solar cell has Isc=50mA and Voc =0.7V under full sun light. What is the maximum power if the fill factor is 0.8V.
- Vcc = +12 V %3D a. Determine the following values for the fixed-bias configuration in the figure to the right. Rc IBo and ICO 2.2 k2 C2 RB 240 k2 ac output VCEQ, VB, and Vc 10 uF C ac input VCE B = 50 VBC 10 µF5. Determine the output voltage waveform for each circuit in Figures below. o—tet ° o——bt Ji +10vV +ov oV v v, uv% w3 v, Ve nv% 0T v, Ve DVQV 0T v, ~10v =10V -0V @ ® © Ll i Ll o o oI o ol—ptg—o oV v Hov v oy v Y ov% 0K0F Ve Ve nv% K0S vy Ve uv% 0K S v, -10v -0V -1ovWhat is the voltage contribution if the 9.0mA current source?
- In the circuit in the figure, the amplitude of the input current is 5 Amps and its phase is 0 degrees, the amplitude of the input voltage is 18 volts and its phase is 90 degrees. How many volts is the amplitude of the voltage phasor V on capacitor C1? Values of the elements in the circuit:R= 14 OhmsC1= 10j OhmsC2= -3j OhmsL= 4j OhmsConvert the circuit from a T to a pi configurationMillmans theory current thru 5ohm
- Q3/ Consider the circuit in Figure (2), answer (a)-What type of circuit is this? (b)-What is the total peak secondary voltage? (c)-Find the peak voltage across each half of the secondary. (d)-Sketch the voltage waveform across RL. 120 Vrms 4:1 00000 elile D₁ D₂2 Figure (2) WWII RL 1.0 ΚΩDIODE ZENER For the network in the figure, determine the "Vi" range, which will keep "VL" at 8V and will not exceed the maximum power value of the zener diodeWith V1, voltage peak to peak is 10 volts, R1=200 Ohm, R2=1000 Ohm and C1= 300 nF. Find Vx, voltage across the the capacitor, C1 and R2 when the frequency is 1000 Hz and 10000 Hz